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Photocatalytic degradation of aqueous phenanthrene in a slurry photocatalytic reactor: optimization and modelling

机译:浆料光催化反应器中含水膦水溶液的光催化降解:优化和建模

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摘要

A photoreactor with 254 nm, 16 W UV lamp was evaluated for phenanthrene (PHE) degradation. The effect of operating variables such as initial PHE concentration (1000-1500 mu g/l), catalyst dosage (0.1-0.9 g/l) and pH (3.0-9.0) on PHE degradation was investigated in detail. The batch study of photocatalytic process showed 83.5% PHE degradation and 60.2% TOC removal for optimized values (PHE concentration - 1000 mu g/l, TiO2 dosage - 0.5 g/l and pH - 3.0) during 3 h reaction. The photocatalytic degradation of PHE was found to follow pseudo-first-order kinetics. The results obtained from continuous process revealed that nano TiO2 could be used for industrial applications because of its potential for long-term operations. Response surface methodology (RSM) with Design Expert software was used to analyse the obtained experimental data.
机译:评价具有254nm,16W紫外灯的光反应器,用于菲丙烯(PHE)降解。 详细研究了操作变量如初始PHE浓度(1000-1500μg),催化剂剂量(0.1-0.9g / L)和pH(3.0-9.0)对PHE降解的影响。 光催化过程的分批研究表明,在3H反应期间,PHE降解83.5%的PHE降解和60.2%TOC去除优化值(PHE浓度 - 1000μg/ L,TiO 2剂量 - 0.5g / L和pH-3.0)。 发现PHE的光催化降解遵循伪一阶动力学。 从连续过程中获得的结果表明,由于其对长期操作的可能性,纳米TiO2可用于工业应用。 使用设计专家软件的响应面方法(RSM)用于分析所获得的实验数据。

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